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Published on: June 2, 2014
Profiling cerebrovascular function in migraine: A systematic review and meta-analysis
Jemima Sa Dzator1, Peter Rc Howe1,2,3, Rachel Hx Wong1,2
1Clinical Nutrition Research Centre, School of Biomedical Sciences and Pharmacy, University of Newcastle, Callaghan, Australia.
Insights
Migraine patients show altered cerebrovascular function, with higher arterial stiffness and reduced response to carbon dioxide. These findings suggest potential circulatory issues in the brain that may contribute to migraine.
Area of Science:
- Neurology
- Vascular Biology
- Medical Research
Background:
- Migraineurs exhibit an increased risk of cerebrovascular disease.
- Previous research often assessed systemic vascular function, potentially overlooking specific cerebral circulation abnormalities.
Purpose of the Study:
- To investigate and compare cerebrovascular function between individuals with migraine and healthy controls.
- To determine if differences in cerebral blood flow and responsiveness exist in migraineurs.
Main Methods:
- A systematic literature search was performed across three electronic databases.
- Meta-analyses were conducted on quantitative data from 40 selected articles to calculate standardized mean differences (SMD).
Main Results:
- Migraineurs demonstrated a higher pulsatility index (PI) in posterior circulation (SMD=0.23, P=0.01), indicating increased arterial stiffness.
- Cerebrovascular responsiveness (CVR) to hypercapnia was lower in migraineurs' posterior circulation (SMD=-0.34, P=0.04).
- Elevated resting mean blood flow velocity was observed in both anterior (SMD=0.14, P=0.003) and posterior circulations (SMD=0.20, P=0.007) of migraineurs.
Conclusions:
- Migraineurs exhibit significantly altered cerebrovascular function compared to controls.
- Elevated PI and impaired CVR suggest issues with arterial stiffness and cerebral vasodilator function in migraine.
- Further research is warranted to explore if improving cerebrovascular function can alleviate migraine symptoms.
Abstract:
Previous studies have investigated whether migraine is a circulatory disorder, as migraineurs are at heightened risk of cerebrovascular disease. However, in most cases, systemic vascular function was evaluated, which may not reflect abnormalities in the cerebral circulation. Therefore, we aimed to determine whether cerebrovascular function differs between migraineurs and controls. A systematic literature search was conducted across three electronic databases to search for studies that compared cerebrovascular function in migraineurs to controls. Where applicable, meta-analyses were used to determine standardised mean differences (SMD) between migraineurs and controls. Seventy articles were identified, 40 of which contained quantitative data. Meta-analyses showed pulsatility index (PI) was higher (SMD = 0.23; 95%CI = 0.05 to 0.42, P = 0.01) and cerebrovascular responsiveness (CVR) to hypercapnia was lower (SMD=-0.34; 95%CI=-0.67 to -0.01, P = 0.04) in the posterior circulation of migraineurs, particularly those without aura. The meta-analyses also indicated that migraineurs have higher resting mean blood flow velocity in both anterior (SMD = 0.14; 95%CI = 0.05 to 0.23, P = 0.003) and posterior circulations (SMD = 0.20; 95%CI = 0.05 to 0.34, P = 0.007). Compared to healthy controls, migraineurs have altered cerebrovascular function, evidenced by elevated PI (representing arterial stiffness) and impaired CVR to hypercapnia (representing cerebral vasodilator function). Future studies should investigate whether improvement of cerebrovascular function is able to alleviate migraine.
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